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增强动态范围X射线成像。

Enhanced dynamic range x-ray imaging.

作者信息

Haidekker Mark A, Morrison Logan Dain-Kelley, Sharma Ajay, Burke Emily

机构信息

University of Georgia, College of Engineering, Driftmier Engineering Center, 597 D.W. Brooks Drive, Athens, GA 30602-4435, USA.

University of Georgia, College of Engineering, Driftmier Engineering Center, 597 D.W. Brooks Drive, Athens, GA 30602-4435, USA.

出版信息

Comput Biol Med. 2017 Mar 1;82:40-48. doi: 10.1016/j.compbiomed.2017.01.014. Epub 2017 Jan 25.

Abstract

X-ray images can suffer from excess contrast. Often, image exposure is chosen to visually optimize the region of interest, but at the expense of over- and underexposed regions elsewhere in the image. When image values are interpreted quantitatively as projected absorption, both over- and underexposure leads to the loss of quantitative information. We propose to combine multiple exposures into a composite that uses only pixels from those exposures in which they are neither under- nor overexposed. The composite image is created in analogy to visible-light high dynamic range photography. We present the mathematical framework for the recovery of absorbance from such composite images and demonstrate the method with biological and non-biological samples. We also show with an aluminum step-wedge that accurate recovery of step thickness from the absorbance values is possible, thereby highlighting the quantitative nature of the presented method. Due to the higher amount of detail encoded in an enhanced dynamic range x-ray image, we expect that the number of retaken images can be reduced, and patient exposure overall reduced. We also envision that the method can improve dual energy absorptiometry and even computed tomography by reducing the number of low-exposure ("photon-starved") projections.

摘要

X射线图像可能存在对比度过度的问题。通常,图像曝光的选择是为了在视觉上优化感兴趣区域,但代价是图像中其他区域出现曝光过度和曝光不足的情况。当将图像值作为投影吸收进行定量解释时,曝光过度和曝光不足都会导致定量信息的丢失。我们建议将多次曝光合并为一个合成图像,该合成图像仅使用那些既未曝光不足也未曝光过度的曝光中的像素。合成图像的创建类似于可见光高动态范围摄影。我们提出了从这种合成图像中恢复吸光度的数学框架,并用生物和非生物样本演示了该方法。我们还用铝阶梯楔形板表明,从吸光度值准确恢复阶梯厚度是可能的,从而突出了所提出方法的定量性质。由于增强动态范围X射线图像中编码的细节更多,我们预计可以减少重拍图像的数量,并总体上减少患者的辐射剂量。我们还设想,该方法可以通过减少低曝光(“光子匮乏”)投影的数量来改进双能吸收测定法,甚至改进计算机断层扫描。

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